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养殖鱼类的营养生物能量模型:食物组成对生长、耗氧量和废物产生的影响。

A Nutritional Bioenergetic Model for Farmed Fish: Effects of Food Composition on Growth, Oxygen Consumption and Waste Production.

作者信息

Stavrakidis-Zachou Orestis, Eding Ep H, Papandroulakis Nikos, Lika Konstadia

机构信息

Institute of Marine Biology, Biotechnology and Aquaculture, Hellenic Centre for Marine Research, Heraklion, Greece.

Aquaculture and Fisheries Group, Wageningen University and Research, Wageningen, Netherlands.

出版信息

Aquac Nutr. 2025 Jul 26;2025:9010939. doi: 10.1155/anu/9010939. eCollection 2025.

Abstract

The study of flow and transformation of energy and nutrients via mathematical modelling provides an in silico tool approach for designing scientific experiments, improving precision in aquaculture production and reducing the need for experimental animals. The proposed nutritional bioenergetics model is based on the dynamic energy budget (DEB) theory, a mechanistic framework to study individual metabolism. The model is an extension of the typical DEB models in that it includes a digestion module where the protein and non-protein food components contribute to assimilation via the concept of a synthesising unit (SU). The model allows predictions for measurable quantities of interest for aquaculture, including feeding rate, oxygen consumption, carbon dioxide, ammonia and solid waste production, under various temperatures and feeding conditions, both in terms of quantity and macronutrient composition. The feeding schedule's effects, such as the diurnal variation in waste production in response to feeding frequency, are also captured. The model quantifies the effects of the dietary protein-to-energy ratio on food intake and assimilation; energy-rich diets or those with excessive or poor amounts of protein show reduced intake. The model has been parametrised and validated for rainbow trout () to demonstrate its capabilities. Testing the model with diverse datasets has shown that it predicts weight gain well, and to a lesser extent, oxygen consumption and total ammonia production. The proposed model could be a useful in silico tool for fish researchers, technicians and farm operators.

摘要

通过数学建模研究能量和营养物质的流动与转化,为设计科学实验、提高水产养殖生产精度以及减少对实验动物的需求提供了一种计算机模拟工具方法。所提出的营养生物能量学模型基于动态能量收支(DEB)理论,这是一个研究个体新陈代谢的机理框架。该模型是典型DEB模型的扩展,因为它包括一个消化模块,其中蛋白质和非蛋白质食物成分通过合成单元(SU)的概念对同化作用有贡献。该模型能够预测水产养殖中各种感兴趣的可测量量,包括在不同温度和投喂条件下的投喂率、耗氧量、二氧化碳、氨和固体废物产量,包括数量和常量营养素组成方面。还捕捉到了投喂时间表的影响,例如废物产生量随投喂频率的昼夜变化。该模型量化了日粮蛋白质能量比对食物摄入量和同化作用的影响;富含能量的日粮或蛋白质含量过高或过低的日粮显示摄入量减少。该模型已针对虹鳟鱼()进行了参数化和验证,以展示其能力。用不同数据集对该模型进行测试表明,它能很好地预测体重增加,在较小程度上能预测耗氧量和总氨产量。所提出的模型对于鱼类研究人员、技术人员和养殖场经营者可能是一种有用的计算机模拟工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab33/12317818/0dc73bf824f3/ANU2025-9010939.001.jpg

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